Multi Shank Linear Silicon Probe

A multi-shank linear silicon probe is a neurophysiological recording device that uses several slender silicon shanks, each carrying linearly arranged electrode sites, to measure neural activity across multiple brain locations and depths. When inserted into tissue, its electrodes detect extracellular voltage fluctuations produced by nearby neuronal action potentials and synaptic activity, enabling simultaneous recording from distributed populations. These probes support high-density studies of circuit organization, laminar processing, and interactions between brain regions while reducing the need for separate recording electrodes. In neuroscience, they help relate cellular activity to sensory processing, behavior, and disease-related changes in network function.

Multi Shank Linear Silicon Probe - Related Videos

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JoVE EoE - Neurophysiology

Recording Brain Electrical Activity in Behaving Mice Using Multi-Shank Linear Silicon Probes

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2025

This video outlines a protocol for implanting a multi-shank linear silicon probe into the mouse brain to measure local field potentials. The procedure involves securing the probe to a stereotaxic unit, positioning it accurately over the target brain region, inserting it into the brain, and securing it with dental cement. After implantation, the assembly is protected with a casing. Following recovery, the setup allows for recording local field potentials, providing insights into neuronal...

Large-scale Recording of Neurons by Movable Silicon Probes in Behaving Rodents

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Cited by 111 •

2012

We describe methods for large-scale recording of multiple single units and local field potential in behaving rodents with silicon probes. Drive fabrication, probe attachment to the drive and probe implantation processes are illustrated in sufficient details for easy replication.

Research

JoVE Journal - Neuroscience
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Recording Large-scale Neuronal Ensembles with Silicon Probes in the Anesthetized Rat

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Cited by 24 •

2011

Extracellular recordings of neuronal activity using silicon probes in the anesthetized rat will be described. This technique allows information to be obtained across multiple brain areas from more than 100 neurons simultaneously. It provides information with single cell resolution about neuronal ensembles dynamics in multiple local circuits.

Insertion of Flexible Neural Probes Using Rigid Stiffeners Attached with Biodissolvable Adhesive

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Cited by 99 •

2013

Insertion of flexible neural microelectrode probes is enabled by attaching probes to rigid stiffeners with polyethylene glycol (PEG). A unique assembly process ensures uniform and repeatable attachment. After insertion into tissue, the PEG dissolves and the stiffener is extracted. An in vitro test method evaluates the technique in agarose gel.

Research

JoVE Journal - Behavior
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Multi-layer Cortical Ca2+ Imaging in Freely Moving Mice with Prism Probes and Miniaturized Fluorescence Microscopy

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Cited by 26 •

2017

Here, we present a procedure for performing large-scale Ca2+ imaging with cellular-resolution across multiple cortical layers in freely moving mice. Hundreds of active cells can be observed simultaneously using a miniature, head-mounted microscope coupled with an implanted prism probe.

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